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131.
水盐梯度对滨海湿地土壤养分指标和酶活性的影响   总被引:4,自引:0,他引:4  
[目的]研究海水入侵对滨海湿地土壤性质的影响,为分析水盐梯度对土壤养分指标和酶活性的影响机制提供依据。[方法]采集胶州湾滨海湿地表层土壤并设计室内模拟试验,测定不同水盐梯度上的土壤养分指标和酶活性。[结果]盐分和水分对土壤pH值和容重(BD)的影响显著;土壤有机质(TOM)、氨氮(NH_4~+-N)、速效磷(AP)、速效钾(AK)、蔗糖酶(SA)、脲酶(UA)、碱性磷酸酶(APA)均随水梯度的增加表现为先升高后降低的趋势,在30%水梯度时达到最高值;土壤TOM,AP,AK,SA,UA,APA均随盐梯度的增加而降低,NH_4~+-N随盐梯度的增加而增加。土壤SA与TOM,AP,AK存在显著正相关关系;APA与TOM,AP,AK,BD显著正相关;UA与pH值,BD显著正相关,与NH_4~+-N具有一定的相关性。[结论]在一定范围内,土壤中水分过高或过低、盐分增加均会对土壤养分含量和酶活性产生抑制作用;土壤养分和酶活性之间存在密切的相关关系。  相似文献   
132.
混油拖尾现象与批次跟踪的准确性、调度计划的可靠性、切割方案的经济性密切相关,准确描述混油拖尾现象对控制混油量、预测油品质量指标十分重要。分析了混油拖尾曲线的变化规律,建立了混油界面非对称分布的模拟模型。基于混油界面检测数据得到混油等效密度分布特点及其梯度变化规律,分别利用Gamma、Gamma-χ~2分布函数逼近混油等效密度梯度变化曲线。通过编程模拟分布函数,近而反演出分布函数中的关键参数后,得到混油等效密度的分布曲线。基于此,分析不同边界条件和运行工况下管道系统各参数与等效密度分布函数参数的关系,得到拟合公式,进一步利用部分数据预测完整混油等效密度分布曲线,以实现等效密度曲线的实时在线预测,为顺序输送混油量预测和油品切割提供有效指导。  相似文献   
133.
坡度对浅沟侵蚀产沙的野外放水冲刷试验影响   总被引:5,自引:1,他引:4  
为了研究坡度对坡面浅沟侵蚀产沙的影响,以黄土丘陵沟壑区坡面浅沟为研究对象,选取野外实地坡面14.0°,18.5°,26.0°,29.0°坡度和5,10,15,20,25L/min放水流量进行典型野外坡面浅沟径流小区放水冲刷试验,研究坡度对浅沟径流率、产沙率、含沙量、总径流量、总产沙量的影响。结果表明:5,10,15,20,25L/min不同放水流量下,坡度与径流率、总径流量成正相关,既随着坡度增大径流率、总径流量增大;5,10,15,20,25L/min不同放水流量和14.0°,18.5°,26.0°,29.0°坡度下产沙率、含沙量和总产沙量随时间变化的规律一致,表现为试验时间内,均出现先增大—到达最大—波动减小—稳定趋势;产沙率、含沙量、总产沙量与坡度的关系表现为产沙率、含沙量、总产沙量随着坡度的增大先增大,达到最大值后减小,最大值出现在26.0°,26.0°的产沙率、含沙量和总产沙量分别为14.0°的1.06~2.87,1.31~2.21,1.08~2.77倍,产沙率、含沙量、总产沙量均存在临界坡度,临界坡度范围为18.5°~29.0°。  相似文献   
134.
采用铗日法对贺兰山西坡鼠类的内脏重量与海拔梯度关系情况进行了细致研究。选取8条典型沟道为样线,共布设有效铗日18 748个,捕获鼠类235只。阿拉善黄鼠和大林姬鼠在所有海拔梯度均有分布,其次是社鼠、灰仓鼠和短尾仓鼠,海拔分布范围最小的是高山鼠兔和东方田鼠。阿拉善黄鼠的肺脏和肾脏重量高海拔重量远高于低海拔重量,显示出了其对外界环境的超强适应能力。  相似文献   
135.
Background, aim, and scope  Fertilization is an important agricultural practice for increasing crop yields. In order to maintain the soil sustainability, it is important to monitor the effects of fertilizer applications on the shifts of soil microorganisms, which control the cycling of many nutrients in the soil. Here, culture-dependent and culture-independent approaches were used to analyze the soil bacterial and fungal quantities and community structure under seven fertilization treatments, including Control, Manure, Return (harvested peanut straw was returned to the plot), and chemical fertilizers of NPK, NP, NK, and PK. The objective of this study was to examine the effects on soil microbial composition and diversity of long-term organic and chemical fertilizer regimes in a Chinese upland red soil. Materials and methods  Soil samples were collected from a long-term experiment station at Yingtan (28°15′N, 116°55′E), Jiangxi Province of China. The soil samples (0–20 cm) from four individual plots per treatment were collected. The total numbers of culturable bacteria and fungi were determined as colony forming units (CFUs) and selected colonies were identified on agar plates by dilution plate methods. Moreover, soil DNAs were extracted and bacterial 16S rRNA genes and fungal 18S rRNA genes were polymerase chain reaction amplified, and then analyzed by denaturing gradient gel electrophoresis (DGGE), cloning, and sequencing. Results  The organic fertilizers, especially manure, induced the least culturable bacterial CFUs, but the highest bacterial diversity ascertained by DGGE banding patterns. Chemical fertilizers, on the other hand, had less effect on the bacterial composition and diversity, with the NK treatment having the lowest CFUs. For the fungal community, the manure treatment had the largest CFUs but much fewer DGGE bands, also with the NK treatment having the lowest CFUs. The conventional identification of representative bacterial and fungal genera showed that long-term fertilization treatments resulted in differences in soil microbial composition and diversity. In particular, 42.4% of the identified bacterial isolates were classified into members of Arthrobacter. For fungi, Aspergillus, Penicillium, and Mucor were the most prevalent three genera, which accounted for 46.6% of the total identified fungi. The long-term fertilization treatments resulted in different bacterial and fungal compositions ascertained by the culture-dependent and also the culture-independent approaches. Discussion  It was evident that more representative fungal genera appeared in organic treatments than other treatments, indicating that culturable fungi were more sensitive to organic than to chemical fertilizers. A very notable finding was that fungal CFUs appeared maximal in organic manure treatments. This was quite different from the bacterial CFUs in the manure, indicating that bacteria and fungi responded differently to the fertilization. Similar to bacteria, the minimum fungal CFUs were also observed in the NK treatment. This result provided evidence that phosphorus could be a key factor for microorganisms in the soil. Thus, despite the fact that culture-dependent techniques are not ideal for studies of the composition of natural microbial communities when used alone, they provide one of the more useful means of understanding the growth habit, development, and potential function of microorganisms from soil habitats. A combination of culture-dependent and culture-independent approaches is likely to reveal more complete information regarding the composition of soil microbial communities. Conclusions  Long-term fertilization had great effects on the soil bacterial and fungal communities. Organic fertilizer applications induced the least culturable bacterial CFUs but the highest bacterial diversity, while chemical fertilizer applications had less impact on soil bacterial community. The largest fungal CFUs were obtained, but much lower diversity was detected in the manure treatment. The lowest bacterial and also fungal CFUs were observed in the NK treatment. The long-term fertilization treatments resulted in different bacterial and fungal compositions ascertained by the culture-dependent and also the culture-independent approaches. Phosphorus fertilizer could be considered as a key factor to control the microbial CFUs and diversity in this Chinese upland red soil. Recommendations and perspectives  Soil fungi seem to be a more sensitive indicator of soil fertility than soil bacteria. Since the major limitation of molecular methods in soil microbial studies is the lack of discrimination between the living and dead, or active and dormant microorganisms, both culture-dependent and culture-independent methods should be used to appropriately characterize soil microbial diversity.  相似文献   
136.
黄土丘陵沟壑区坡面侵蚀产沙地形因子的临界条件   总被引:7,自引:0,他引:7       下载免费PDF全文
用能量的观点来解释坡度、坡长、降雨对坡面侵蚀产沙的影响。通过分析安塞水土保持研究站、晋西离石县王家沟小流域的小区资料,研究坡度、坡长、降雨对坡面侵蚀产沙的影响。结果表明:降雨特性(雨量、雨强)对坡面侵蚀产沙的作用最大,坡度次之,坡长最小;坡面侵蚀产沙的临界坡度分别受降雨、坡长大小的影响,临界坡长分别受降雨、坡度、坡长大小的影响;临界坡度、临界坡长都不是一个确定的值,但在一定范围内变化,变化范围由降雨、坡面地形等因素决定。研究成果可为黄土丘陵沟壑区坡面治理提供理论依据。  相似文献   
137.
To estimate the succession and phylogenetic composition of the eukaryotic communities responsible for the decomposition of rice straw compost under flooded conditions during the cultivation period of paddy rice, denaturing gradient gel electrophoresis (DGGE) analysis targeting 18S rDNA followed by sequencing was conducted in a Japanese paddy field. The eukaryotic communities in rice straw compost incorporated into the flooded paddy field were influenced by the mid-season drainage and mainly composed of fungi (Ascomycota, Zygomycota, and Chytridiomycota) and protozoa (Ciliophora, Euglyphida, and Dactylopodida), most of which existed continuously during the cultivation period of paddy rice. The results indicated that these eukaryotic members were associated with the decomposition of rice straw compost in paddy field soil directly or indirectly.  相似文献   
138.
沈阳南部沿城乡梯度土壤铅时空分布研究   总被引:2,自引:0,他引:2  
对沈阳南部沿城乡梯度土壤铅含量的分布特征进行了研究。结果表明,全量Pb沿城乡梯度显著降低,但不同土层之间无显著差异。有效态Pb含量沿城乡梯度具有显著降低,并且在城市土壤中呈现较明显的季节性变化。另外,土壤有效态Pb含量在夏季郊区样品和秋季城市样品的层次之间也有显著变化。相关性分析表明,土壤理化性质如土壤质地、pH和CEC对全量及有效态Pb含量产生了一定影响,而人为等因素是影响土壤全量及有效态重金属的主要因素。  相似文献   
139.
为探究不同海拔下植烟土壤细菌群落结构特征及影响细菌群落结构的主要因素,在贵州省遵义地区选择海拔800(ZL)、1000(ZS)和1200m(ZH)的3块植烟土壤,采用16S rRNA高通量测序法对植烟土壤微生物多样性进行分析。结果表明,ZL和ZH处理植烟土壤细菌α多样性均低于ZS处理;3个海拔下植烟土壤优势门为放线菌门(Actinobacteriota)、变形菌门(Proteobacteria)、绿弯菌门(Chloroflexi)和酸杆菌门(Acidobacteriota),放线菌门的相对丰度以ZL处理最高,较ZH处理提高了34.22%;变形菌门表现则相反,ZH处理变形菌门丰度较ZL处理显著提高。绿弯菌门与酸杆菌门丰度在3个海拔处理中表现较为一致,均为ZS>ZL>ZH。聚类热图分析结果显示,土壤含水率和pH与Armatimonadota和蓝细菌门(Gyanobacteria)存在显著正相关关系,与变形菌门存在显著负相关关系;变形菌门、厚壁菌门(Firmicutes)和髌骨菌门(Patescibacteria)与土壤微生物量氮存在显著正相关关系,而与速效钾存在极显著负相关关系。  相似文献   
140.
土培条件下不同盐分梯度对水稻产量及其生理特性的影响   总被引:2,自引:0,他引:2  
以南粳9108和甬优2640为材料,设置6个土壤含盐量(0%、0.07%、0.14%、0.21%、0.28%、0.35%),研究不同盐分梯度对水稻产量和生理特性的影响。结果表明:(1)盐胁迫影响水稻的生长和发育进程。株高、叶面积、干物质量等形态指标均随盐浓度的上升而下降;稻谷产量亦随盐浓度增加而下降,在0.14%、0.21%、0.28%、0.35%盐浓度处理时产量显著下降,南粳9108分别减产14.14%、43.65%、58.91%、65.68%,甬优2640分别减产20.25%、31.97%、40.41%、49.82%。(2)随着盐浓度的增加,2个参试品种抽穗期叶片抗氧化酶活性均呈先升后降趋势,在0.07%处理下达最高值。(3)抽穗期叶片中游离脯氨酸含量随盐浓度的上升而增加,盐浓度大于0.14%,游离脯氨酸含量较对照显著增加。(4)盐胁迫下,水稻植株吸收Na~+并置换出K~+,除叶片中K~+变化无规律之外,随着盐浓度上升,各部位K~+含量均下降,Na~+含量均上升,K~+/Na~+均呈下降趋势。茎鞘与叶运输的SK、Na随盐浓度的上升而上升,茎选择性运输K~+而抑制Na~+进入叶片;根与茎的SK、Na随盐浓度的上升而下降,茎吸收Na~+并输出K~+到根系。总体而言,低盐浓度对高产水稻品种产量和生理特性无显著影响,盐浓度大于0.07%时影响显著。  相似文献   
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